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Beta-cell failure in type 2 diabetes: mechanisms, markers, and clinical implications
1Department of Diabetes and Endocrinology, Rockwood Diabetes & Endocrinology Clinic , Spokane, WA, USA.
Abstract:
It is well known that type 2 diabetes mellitus (T2D) is a globally increasing health burden. Despite recent therapeutic advances and the availability of many different classes of antihyperglycemic therapy, a large proportion of people do not achieve glycemic control. A decline in pancreatic beta-cell function has been defined as a key contributing factor to progression of T2D. In fact, a significant proportion of beta-cell secretory capacity is thought to be lost well before the diagnosis of T2D is made. Several models have been proposed to explain the reduction in beta-cell function, including reduced beta-cell number, beta-cell exhaustion, and dedifferentiation or transdifferentiation into other cell types. However, there have been reports that suggest remission of T2D is possible, and it is believed that beta-cell dysfunction may be, in part, reversible. As such, the question of whether beta cells are committed to failure in people with T2D is complex. It is now widely accepted that early restoration of normoglycemia may protect beta-cell function. Key to the successful implementation of this approach in clinical practice is the appropriate assessment of individuals at risk of beta-cell failure, and the early implementation of appropriate treatment options. In this review, we discuss the progression of T2D in the context of beta-cell failure and describe how C-peptide testing can be used to assess beta-cell function in primary care practice. In conclusion, significant beta-cell dysfunction is likely in individuals with certain clinical characteristics of T2D, such as long duration of disease, high glycated hemoglobin (≥9%), and/or long-term use of therapies that continuously stimulate the beta cell. In these people, measurement of beta-cell status could assist with choice of appropriate therapy to delay or potentially reverse beta-cell dysfunction and the progression of T2D.
Insights
Type 2 diabetes mellitus (T2D) progression involves declining beta-cell function, but this dysfunction may be reversible. C-peptide testing can assess beta-cell status to guide therapy and potentially delay or reverse T2D progression.
Area of Science:
- Endocrinology and Metabolism
- Diabetes Research
- Cell Biology
Background:
- Type 2 diabetes mellitus (T2D) is a growing global health concern with many patients failing to achieve glycemic control.
- Declining pancreatic beta-cell function, characterized by reduced number or function, is a primary driver of T2D progression, often occurring before diagnosis.
- Emerging evidence suggests that T2D remission is possible, indicating that beta-cell dysfunction might be partially reversible.
Purpose of the Study:
- To review the progression of T2D concerning beta-cell failure.
- To highlight the role of C-peptide testing in assessing beta-cell function in primary care.
- To discuss how early assessment and intervention can impact T2D management.
Main Methods:
- Literature review on T2D progression and beta-cell function.
- Discussion of proposed models for beta-cell dysfunction (e.g., exhaustion, dedifferentiation).
- Explanation of C-peptide testing as a biomarker for beta-cell secretory capacity.
Main Results:
- Significant beta-cell dysfunction is probable in T2D patients with long disease duration, high HbA1c (≥9%), or prolonged use of beta-cell stimulating therapies.
- Early restoration of normoglycemia is crucial for protecting remaining beta-cell function.
- C-peptide levels can indicate the degree of beta-cell impairment.
Conclusions:
- Beta-cell failure in T2D is complex but potentially not irreversible.
- C-peptide testing in primary care can identify individuals at risk of significant beta-cell dysfunction.
- Assessing beta-cell status aids in selecting appropriate therapies to delay or reverse T2D progression.
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